Despite their wide presence in various models in the study of collective behaviors, explicit swarming patterns are difficult to obtain. In this paper, special stationary solutions of the aggregation equation with power-law kernels are constructed by inverting Fredholm integral operators or by employing certain integral identities. These solutions are expected to be the global energy stable equilibria and to characterize the generic behaviors of stationary solutions for more general interactions
In this paper we consider interacting particle systems which are frequently used to model collective...
In this paper we show how the method of Zakharov transformations may be used to analyze the stationa...
AbstractIn this paper we consider interacting particle systems which are frequently used to model co...
Despite their wide presence in various models in the study of collective behaviors, explicit swarmin...
Over the past decade, the aggregation equation has become a popular area of research within mathemat...
We consider the aggregation equation ρt − ∇ · (ρ∇K ∗ ρ) = 0 in Rn, where the interaction potentia...
The aggregation equation is a nonlocal and nonlinear conservation law commonly used to describe the ...
We study distributional solutions to the radially symmetric aggregation equation for power-law poten...
We study distributional solutions to the radially symmetric aggregation equation for power-law poten...
One contribution of 13 to a Theme Issue ‘Partial differential equation models in the socio-economic ...
We consider the aggregation equation ρt − ∇ · (ρ∇K ∗ ρ) = 0 in Rn, where the interaction potentia...
We study an aggregation model of charged particles in the cases of weighted input (power-law input) ...
We solve the two dimensional aggregation-drift equation with interaction potential $W(x) = |x|^2/2 -...
In this work, we study singular solutions and pattern formation in aggregation equations and more ge...
We introduce a method to numerically compute equilibrium measures for problems with attractive-repul...
In this paper we consider interacting particle systems which are frequently used to model collective...
In this paper we show how the method of Zakharov transformations may be used to analyze the stationa...
AbstractIn this paper we consider interacting particle systems which are frequently used to model co...
Despite their wide presence in various models in the study of collective behaviors, explicit swarmin...
Over the past decade, the aggregation equation has become a popular area of research within mathemat...
We consider the aggregation equation ρt − ∇ · (ρ∇K ∗ ρ) = 0 in Rn, where the interaction potentia...
The aggregation equation is a nonlocal and nonlinear conservation law commonly used to describe the ...
We study distributional solutions to the radially symmetric aggregation equation for power-law poten...
We study distributional solutions to the radially symmetric aggregation equation for power-law poten...
One contribution of 13 to a Theme Issue ‘Partial differential equation models in the socio-economic ...
We consider the aggregation equation ρt − ∇ · (ρ∇K ∗ ρ) = 0 in Rn, where the interaction potentia...
We study an aggregation model of charged particles in the cases of weighted input (power-law input) ...
We solve the two dimensional aggregation-drift equation with interaction potential $W(x) = |x|^2/2 -...
In this work, we study singular solutions and pattern formation in aggregation equations and more ge...
We introduce a method to numerically compute equilibrium measures for problems with attractive-repul...
In this paper we consider interacting particle systems which are frequently used to model collective...
In this paper we show how the method of Zakharov transformations may be used to analyze the stationa...
AbstractIn this paper we consider interacting particle systems which are frequently used to model co...